9702 · 13.1
Gravitational field — FAQ
Frequently asked questions for 9702 Gravitational field. Direct answers first, then deeper explanation — then practise with marking.
What is the key difference between gravitational field strength and gravitational potential?
Gravitational field strength (g) is a vector quantity, representing the force per unit mass and indicating the direction a mass would accelerate. Gravitational potential () is a scalar quantity, representing the work done per unit mass to bring it from infinity to a point, indicating the energy state of that point in the field.
Why are gravitational potential and potential energy always negative values?
They are negative because gravitational attraction is an attractive force. By convention, potential at infinity is zero. As a mass moves from infinity into a field, work is done by the field, meaning energy is released. This release of energy results in a lower, negative potential and potential energy relative to zero at infinity, signifying a bound system.
How does Newton's Law of Gravitation compare to Coulomb's Law for electrostatic forces?
Both follow an inverse square law (proportional to ) and are proportional to the product of the interacting properties (masses for gravity, charges for electrostatics). However, gravity is always attractive, while electrostatic forces can be either attractive or repulsive. Also, gravity is significantly weaker than the electrostatic force.